228 lines
5.4 KiB
Plaintext
228 lines
5.4 KiB
Plaintext
/* Linker script for Dialog DA1469x devices
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*
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* Version: Sourcery G++ 4.5-1
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* Support: https://support.codesourcery.com/GNUToolchain/
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*
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* Copyright (c) 2007, 2008, 2009, 2010 CodeSourcery, Inc.
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*
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* The authors hereby grant permission to use, copy, modify, distribute,
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* and license this software and its documentation for any purpose, provided
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* that existing copyright notices are retained in all copies and that this
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* notice is included verbatim in any distributions. No written agreement,
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* license, or royalty fee is required for any of the authorized uses.
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* Modifications to this software may be copyrighted by their authors
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* and need not follow the licensing terms described here, provided that
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* the new terms are clearly indicated on the first page of each file where
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* they apply.
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*/
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OUTPUT_FORMAT ("elf32-littlearm", "elf32-bigarm", "elf32-littlearm")
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/* Linker script to place sections and symbol values. Should be used together
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* with other linker script that defines memory regions FLASH and RAM.
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* It references following symbols, which must be defined in code:
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* Reset_Handler : Entry of reset handler
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*
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* It defines following symbols, which code can use without definition:
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* __exidx_start
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* __exidx_end
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* __etext
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* __data_start__
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* __preinit_array_start
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* __preinit_array_end
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* __init_array_start
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* __init_array_end
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* __fini_array_start
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* __fini_array_end
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* __data_end__
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* __bss_start__
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* __bss_end__
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* __HeapBase
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* __HeapLimit
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* __StackLimit
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* __StackTop
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* __stack
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* __bssnz_start__
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* __bssnz_end__
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*/
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ENTRY(Reset_Handler)
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SECTIONS
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{
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.imghdr (NOLOAD):
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{
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. = . + _imghdr_size;
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} > FLASH
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__text = .;
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.text :
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{
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__isr_vector_start = .;
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KEEP(*(.isr_vector))
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/* ISR vector shall have exactly 512 bytes */
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. = __isr_vector_start + 0x200;
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__isr_vector_end = .;
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*(.text)
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*(.text.*)
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KEEP(*(.init))
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KEEP(*(.fini))
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/* .ctors */
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*crtbegin.o(.ctors)
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*crtbegin?.o(.ctors)
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*(EXCLUDE_FILE(*crtend?.o *crtend.o) .ctors)
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*(SORT(.ctors.*))
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*(.ctors)
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/* .dtors */
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*crtbegin.o(.dtors)
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*crtbegin?.o(.dtors)
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*(EXCLUDE_FILE(*crtend?.o *crtend.o) .dtors)
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*(SORT(.dtors.*))
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*(.dtors)
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*(.rodata*)
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*(.eh_frame*)
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. = ALIGN(4);
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} > FLASH
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.ARM.extab :
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{
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*(.ARM.extab* .gnu.linkonce.armextab.*)
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. = ALIGN(4);
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} > FLASH
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__exidx_start = .;
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.ARM.exidx :
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{
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*(.ARM.exidx* .gnu.linkonce.armexidx.*)
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. = ALIGN(4);
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} > FLASH
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__exidx_end = .;
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.intvect :
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{
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. = ALIGN(4);
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__intvect_start__ = .;
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. = . + (__isr_vector_end - __isr_vector_start);
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. = ALIGN(4);
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} > RAM
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.sleep_state (NOLOAD) :
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{
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. = ALIGN(4);
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*(sleep_state)
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} > RAM
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/* This section will be zeroed by RTT package init */
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.rtt (NOLOAD):
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{
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. = ALIGN(4);
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*(.rtt)
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. = ALIGN(4);
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} > RAM
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__text_ram_addr = LOADADDR(.text_ram);
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.text_ram :
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{
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. = ALIGN(4);
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__text_ram_start__ = .;
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*(.text_ram*)
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. = ALIGN(4);
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__text_ram_end__ = .;
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} > RAM AT > FLASH
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__etext = LOADADDR(.data);
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.data :
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{
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__data_start__ = .;
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*(vtable)
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*(.data*)
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. = ALIGN(4);
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/* preinit data */
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PROVIDE_HIDDEN (__preinit_array_start = .);
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*(.preinit_array)
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PROVIDE_HIDDEN (__preinit_array_end = .);
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. = ALIGN(4);
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/* init data */
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PROVIDE_HIDDEN (__init_array_start = .);
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*(SORT(.init_array.*))
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*(.init_array)
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PROVIDE_HIDDEN (__init_array_end = .);
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. = ALIGN(4);
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/* finit data */
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PROVIDE_HIDDEN (__fini_array_start = .);
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*(SORT(.fini_array.*))
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*(.fini_array)
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PROVIDE_HIDDEN (__fini_array_end = .);
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*(.jcr)
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. = ALIGN(4);
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/* All data end */
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__data_end__ = .;
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} > RAM AT > FLASH
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.bssnz :
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{
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. = ALIGN(4);
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__bssnz_start__ = .;
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*(.bss.core.nz*)
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. = ALIGN(4);
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__bssnz_end__ = .;
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} > RAM
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.bss :
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{
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. = ALIGN(4);
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__bss_start__ = .;
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*(.bss*)
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*(COMMON)
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. = ALIGN(4);
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__bss_end__ = .;
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} > RAM
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.cmac (NOLOAD) :
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{
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. = ALIGN(0x400);
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*(.libcmac.ram)
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} > RAM
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/* Heap starts after BSS */
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. = ALIGN(8);
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__HeapBase = .;
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/* .stack_dummy section doesn't contains any symbols. It is only
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* used for linker to calculate size of stack sections, and assign
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* values to stack symbols later */
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.stack_dummy (COPY):
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{
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*(.stack*)
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} > RAM
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_ram_start = ORIGIN(RAM);
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/* Set stack top to end of RAM, and stack limit move down by
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* size of stack_dummy section */
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__StackTop = ORIGIN(RAM) + LENGTH(RAM);
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__StackLimit = __StackTop - SIZEOF(.stack_dummy);
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PROVIDE(__stack = __StackTop);
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/* Top of head is the bottom of the stack */
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__HeapLimit = __StackLimit;
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/* Check if data + heap + stack exceeds RAM limit */
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ASSERT(__HeapBase <= __HeapLimit, "region RAM overflowed with stack")
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/* Check that intvect is at the beginning of RAM */
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ASSERT(__intvect_start__ == ORIGIN(RAM), "intvect is not at beginning of RAM")
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}
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